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  4. An AC-Coupled Wideband Neural Recording Front-End With Sub-1 mm2×fJ/conv-step Efficiency and 0.97 NEF
 
research article

An AC-Coupled Wideband Neural Recording Front-End With Sub-1 mm2×fJ/conv-step Efficiency and 0.97 NEF

Uran, Arda  
•
Leblebici, Yusuf  
•
Emami, Azita
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August 4, 2020
IEEE Solid-State Circuits Letters

This letter presents an energy-and-area-efficient ac-coupled front-end for the multichannel recording of wideband neural signals. The proposed unit conditions local held and action potentials using an inverter-based capacitively coupled low-noise amplifier, followed by a per-channel 10-b asynchronous SAR ADC. The adaptation of unit-length capacitors minimizes the ADC area and relaxes the amplifier gain so that small coupling capacitors can be integrated. The prototype in 65-nm CMOS achieves 4× smaller area and 3× higher energy-area efficiency compared to the state of the art with 164 μm×40 μm footprint and 0.78 mm 2 ×fJ/conv-step energy-area figure of merit. The measured 0.65-μW power consumption and 3.1-μVrms input-referred noise within 1 Hz-10 kHz bandwidth correspond to a noise efficiency factor of 0.97.

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Type
research article
DOI
10.1109/LSSC.2020.3013993
Author(s)
Uran, Arda  
Leblebici, Yusuf  
Emami, Azita
Cevher, Volkan  orcid-logo
Date Issued

2020-08-04

Published in
IEEE Solid-State Circuits Letters
Volume

3

Start page

258

End page

261

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LIONS  
LSM  
FunderGrant Number

H2020

725594

Swiss foundations

16066

US foundations

N629091712111

Available on Infoscience
January 13, 2021
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/174675
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